Seth Dixon
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Research Technologist
Also affiliated: Bishop Auckland Hospital (1995); Conway School of Landscape Design (2023)
Unknown Researcher
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Seth Dixon is a Research Technologist at the University of Central Arkansas. His scholarly work includes research on the impact of *Azospirillum brasilense* on rice growth under salt stress, specifically how it regulates gene expression related to salt stress response, abscisic acid signaling, and nutrient transport. His h-index is 2 with a total of 2 publications and 39 citations. Dixon has collaborated with researchers from the University of Arkansas for Medical Sciences, including Yasir Rahmatallah and Galina Glazko, as well as colleagues from the University of Central Arkansas, such as Zachariah Degon and John Cook.
Metrics
- h-index: 2
- Publications: 2
- Citations: 41
Selected Publications
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Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others (2023)
Collaboration Network
Top Collaborators
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
- Azospirillum brasilense improves rice growth under salt stress by regulating the expression of key genes involved in salt stress response, abscisic acid signaling, and nutrient transport, among others
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